2006
DOI: 10.1590/s0103-50532006000800005
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A perspective on applications of ligand-field analysis: inspiration from electron paramagnetic resonance spectroscopy of coordination complexes of transition metal ions

Abstract: Este artigo descreve de maneira um tanto pessoal, o uso da espectroscopia de ressonância paramagnética eletrônica (EPR), incluindo EPR de alta freqüência e alto campo (HFEPR) para investigar a estrutura eletrônica de complexos de íons de metal de transição. Os parâmetros Hamiltonianos de spin, obtidos a partir de experimentos EPR, matriz g para sistemas com S =1/2 e matrizes g e D (zero-field splitting) para sistemas com S > 1/2 fornecem informações sobre os níveis de energia dos orbitais d. Esta informação po… Show more

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Cited by 33 publications
(26 citation statements)
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References 58 publications
(85 reference statements)
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“…30 Since fourth-order interactions may also be present in monometallic complexes, the method can also be used here to evaluate them. Hence, the theoretical tools are available to revisit the ligand field treatment of ZFS, as noticed by Telser in a recent review, 31 and this work aims to analyze and better understand theoretical and experimental results.…”
Section: Introductionmentioning
confidence: 99%
“…30 Since fourth-order interactions may also be present in monometallic complexes, the method can also be used here to evaluate them. Hence, the theoretical tools are available to revisit the ligand field treatment of ZFS, as noticed by Telser in a recent review, 31 and this work aims to analyze and better understand theoretical and experimental results.…”
Section: Introductionmentioning
confidence: 99%
“…All these considerations are in agreement with the results obtained in AOM section and with previous work on other isoelectronic systems. 75 79 , 89 …”
Section: Resultsmentioning
confidence: 99%
“…It was doubted whether Mn 2+ in M-SAS stayed at high-spin state, because such large g value was reported elsewhere [18] for the low-spin d 5 transition metal ion of Fe 3+ . To confirm the spin state of Mn 2+ in both M-SAS and H-BAS, the magnetic measurements were conducted for Mn 2+ singly doped both hosts, which are illustrated in Fig.…”
Section: Epr and Magnetic Measurementsmentioning
confidence: 95%
“…In some cases, the contribution of the orbital magnetic moments is mixed into the g value, which is related to the energy gap between the ground state and the lowest excitation state. The narrower the gap is, the more orbital magnetic moment is contributed, which results in larger g value [18,19]. The Mn 2+ site in M-SAS experiences stronger crystal field than that in H-BAS.…”
Section: Epr and Magnetic Measurementsmentioning
confidence: 99%
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